DWT analysis of high order harmonics influence over distorted regimes with fast variable loads

I. Nicolae, P. Nicolae, Ionuţ-Daniel Smărăndescu
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引用次数: 1

Abstract

The paper studies high order harmonics in distorted regimes with fast variable loads. Our experimental setup uses a three-phase load, built in laboratory by connecting in pairs, in different configurations, several laptops (from different manufacturers) across phases of a three-phase system. Our original dedicated data acquisition system acquired single phase waveforms, each of 5 periods, corresponding to phase currents and voltages, with a sampling frequency of 19 kHz. The acquired data were decomposed with a Discrete Wavelet Transform relying on our original function implementing a Daubechy filter of length 8. Considering the high variable operating regimes of laptops, the analysis was made individually for the first 4 periods of each analyzed sequence. Per period validations were performed considering the total RMS, calculated firstly according to definition, with a definite integral as the limit of a Riemann sum, and secondly as defined by Morsi, with DWT. 3-D diagrams were built to represent, for each level, the weights of details energy that we used as power-quality indices. The DWT analysis revealed that the weights of energies provided by harmonics with orders higher than 32 (sometimes 64) cannot be neglected when considering the signal's overall distorting residue, mainly for voltages. Transients were also detected on high order harmonics and the unbalance generated by them in the energetic picture was also discussed.
高次谐波对快速变负荷畸变区影响的DWT分析
本文研究了具有快速变负荷的畸变域的高次谐波。我们的实验设置使用三相负载,在实验室中通过成对连接不同配置的几台笔记本电脑(来自不同制造商)来构建三相系统的各个阶段。我们原有的专用数据采集系统采集单相波形,每个波形为5个周期,对应相电流和电压,采样频率为19khz。采集到的数据依靠原始函数进行离散小波变换,实现长度为8的Daubechy滤波器。考虑到笔记本电脑的高可变操作制度,对每个分析序列的前4个周期分别进行分析。每周期验证考虑总均方根,首先根据定义计算,用定积分作为黎曼和的极限,其次根据Morsi定义,用DWT计算。我们建立了三维图表来表示每个级别的细节能量权重,我们将其用作电能质量指标。DWT分析表明,在考虑信号的整体失真残余时,不能忽略由高于32阶(有时是64阶)的谐波提供的能量权重,主要是电压。在高次谐波上也检测到瞬态,并讨论了它们在能量图中产生的不平衡。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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